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Numerical study of convective heat transfer of nanofluids: a review
The recent development of nanotechnology led to the concept of using suspended
nanoparticles in heat transfer fluids to improve the heat transfer coefficient of the base fluids …
nanoparticles in heat transfer fluids to improve the heat transfer coefficient of the base fluids …
A review on natural convective heat transfer of nanofluids
Nanofluids are considered to have great potential for heat transfer enhancement and are
highly suited to application in practical heat transfer processes. Recently, several important …
highly suited to application in practical heat transfer processes. Recently, several important …
[HTML][HTML] Investigation of free convection in a wavy trapezoidal porous cavity with MWCNT-Fe3O4/Water hybrid nanofluid under MHD effects: Galerkin finite element …
Our study focuses on numerically investigating natural convection within a three-
dimensional trapezoidal cavity featuring a corrugated hot bottom wall, with a particular …
dimensional trapezoidal cavity featuring a corrugated hot bottom wall, with a particular …
Mixed convection of copper–water nanofluid in a shallow inclined lid driven cavity using the lattice Boltzmann method
A Karimipour, MH Esfe, MR Safaei, DT Semiromi… - Physica A: Statistical …, 2014 - Elsevier
The goal of this work is to study the laminar mixed convection of water–Cu nanofluid in an
inclined shallow driven cavity using the lattice Boltzmann method. The upper lid of the cavity …
inclined shallow driven cavity using the lattice Boltzmann method. The upper lid of the cavity …
Magnetic field effects on natural convection flow of a nanofluid in a horizontal cylindrical annulus using Lattice Boltzmann method
Effect of static radial magnetic field on natural convection heat transfer in a horizontal
cylindrical annulus enclosure filled with nanofluid is investigated numerically using the …
cylindrical annulus enclosure filled with nanofluid is investigated numerically using the …
The numerical investigation of nanofluid based cylinder battery thermal management using lattice Boltzmann method
The battery thermal management (BTM) system is necessary for electric vehicle (EV) to
maintain the temperature of batteries. In order to enhance the cooling performance of BTM …
maintain the temperature of batteries. In order to enhance the cooling performance of BTM …
Develop the nano scale method of lattice Boltzmann to predict the fluid flow and heat transfer of air in the inclined lid driven cavity with a large heat source inside, Two …
M Goodarzi, A D'Orazio, A Keshavarzi… - Physica A: Statistical …, 2018 - Elsevier
Nano scale method of lattice Boltzmann is developed to predict the fluid flow and heat
transfer of air through the inclined lid driven 2-D cavity while a large heat source is …
transfer of air through the inclined lid driven 2-D cavity while a large heat source is …
Heat source/sink effects on a hybrid nanofluid-filled porous cavity
Magnetohydrodynamic natural convection flow and heat transfer in a square porous cavity
differentially heated and cooled by heat source and sink, respectively, and filled with the Cu …
differentially heated and cooled by heat source and sink, respectively, and filled with the Cu …
Augmentation of natural convective heat transfer in square cavity by utilizing nanofluids in the presence of magnetic field and uniform heat generation/absorption
Natural convection in a square cavity filled with different nanofluids is studied numerically.
Both upper and lower surfaces are being insulated, whilst a uniform magnetic field is applied …
Both upper and lower surfaces are being insulated, whilst a uniform magnetic field is applied …
A lattice Boltzmann method for single-and two-phase models of nanofluids: Newtonian and non-Newtonian nanofluids
Nanofluids play an important role in many different industries for an improvement of heat
transfer. The modeling and simulation of such fluids is develo** continuously. Two …
transfer. The modeling and simulation of such fluids is develo** continuously. Two …